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人黏连蛋白环中 DNA 出口门的特征。

Characterization of a DNA exit gate in the human cohesin ring.

机构信息

Research Institute of Molecular Pathology (IMP), Vienna Biocenter (VBC), 1030 Vienna, Austria.

Department of Biology, Institute of Molecular Systems Biology, Eidgenössische Technische Hochschule (ETH) Zürich, 8093 Zurich, Switzerland. Department of Biochemistry, Gene Center, Ludwig-Maximilian University, 81377 Munich, Germany.

出版信息

Science. 2014 Nov 21;346(6212):968-72. doi: 10.1126/science.1256904.

Abstract

Chromosome segregation depends on sister chromatid cohesion mediated by cohesin. The cohesin subunits Smc1, Smc3, and Scc1 form tripartite rings that are thought to open at distinct sites to allow entry and exit of DNA. However, direct evidence for the existence of open forms of cohesin is lacking. We found that cohesin's proposed DNA exit gate is formed by interactions between Scc1 and the coiled-coil region of Smc3. Mutation of this interface abolished cohesin's ability to stably associate with chromatin and to mediate cohesion. Electron microscopy revealed that weakening of the Smc3-Scc1 interface resulted in opening of cohesin rings, as did proteolytic cleavage of Scc1. These open forms may resemble intermediate states of cohesin normally generated by the release factor Wapl and the protease separase, respectively.

摘要

染色体分离依赖于黏合蛋白介导的姐妹染色单体黏合。黏合蛋白亚基 Smc1、Smc3 和 Scc1 形成三联体环,这些环被认为在不同的位点打开,以允许 DNA 的进入和退出。然而,直接证明黏合蛋白存在开放形式的证据是缺乏的。我们发现黏合蛋白的 DNA 出口门是由 Scc1 和 Smc3 的卷曲螺旋区之间的相互作用形成的。该界面的突变会破坏黏合蛋白与染色质稳定结合和介导黏合的能力。电子显微镜显示,削弱 Smc3-Scc1 界面会导致黏合蛋白环打开,Scc1 的蛋白水解切割也是如此。这些开放形式可能类似于由释放因子 Wapl 和蛋白酶 separase 分别正常产生的黏合蛋白的中间状态。

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